BACKGROUND OF THE INVENTION
Field of the Invention
[0001] The present invention relates to a residual yarn removing apparatus for drawing and
removing yarn adhered to a spent roving bobbin from the robin to be transferred from
a fine spinning frame to a roving frame. In particular, the invention relates to a
residual yarn removing apparatus, which is applied to the roving bobbins of various
types of fiber. The residual yarn removing apparatus includes a plurality of residual
yarn removing devices, which correspond in number to the types of the fiber of the
residual yarn, and are arranged in series in a transfer line to correspond to the
fiber types of the residual yarn, so that the residual yarn removing device corresponding
to the type of the detected residual yarn is operated for removing the residual yarn
of each fiber type.
Description of the Background Art
[0002] In a spinning factory, a roving frame forms a roving bobbin bearing roving wound
in a bundle. The roving bobbin is supplied to a fine spinning frame. The roving bobbin
which has been spent in the fine spinning frame is returned to the roving frame, which
winds the bundle of the roving again and supplies it to the fine spinning frame. These
operations are repeated. The total number of the roving bobbins supplied to the fine
spinning frame corresponds to the output of the spinning factory, and thus a large
number of roving bobbins are transferred by the transfer lines during repetition of
the foregoing steps. Since residual yarn has adhered to the roving bobbin spent in
the fine spinning frame, a residual yarn removing device for the roving bobbin is
installed in the transfer line from the fine spinning frame to the roving frame, so
that the roving bobbin may be returned to the roving frame after completely removing
the residual yarn from the roving bobbin.
[0003] As an example, there has been proposed a residual yarn drawing and removing device
in the Japanese Laid-Open Utility Model Publication No. 3-92782 (1991). As shown in
Figures 3 and 4, a roving bobbin 5 to which residual yarn 11 has adhered is transferred
through a residual yarn drawing and removing device 100. The removing device 100 can
simultaneously receive a predetermined number of bobbins 5, which are grouped, and
the bobbins 5 are transferred and stopped by group units. In the removing device 100,
there are provided suction nozzles 13, which are equal in number to the number of
the bobbins 5 in one group and are disposed in parallel, projecting toward the rows
of the bobbins 5. When one bobbin group enters the removing device 100, the transference
is stopped, so that each bobbin 5 is opposed to each suction nozzle 13 and is supported
by a rotary device 12 disposed under the corresponding suction nozzle 13. Each bobbin
5 is driven to rotate together with the rotary device 12 by an electric motor 21.
In this state, the suction nozzle 13 is moved in forward, rearward and vertical directions
to drawn and remove the residual yarn 11 by air. After the completion of the suction,
each suction nozzle 13 is approached to a roving winding auxiliary tool 17, and the
bobbin 5 is rotated forwardly and reversely for completely drawing and removing the
residual yarn 11. The suction nozzles 13 are simultaneously moved in such a manner
that a holder box 14 holding the respective suction nozzles 13 is moved forwardly
and rearwardly along guide rails 19 by a pneumatic cylinder 18 connected to a pneumatic
source through an air piping 22, and is moved vertically by an electric motor 23 through
a chain 20. Each suction nozzle 13 is connected to a duct 15 by a suction hose 16,
and an outlet of the duct 15 is connected to a residual yarn storage (not shown) through
a piping.
[0004] Generally, in the spinning factory, roving including different types of fiber is
handled simultaneously. The residual yarn which is removed from the roving bobbins
by the residual yarn removing devices is opened into a single fiber state and is supplied
as raw cotton for improving a yield. Therefore, mixture of different types of fiber
must be avoided to prevent reduction of the quality. For this reason, the different
types of fiber must be handled by different systems each including the fine spinning
frame, roving frame, residual yarn removing device and transfer line, and thus the
number of the systems are equal in number to the number of the types of the fiber.
Further, they are disposed in parallel on a common plane for simplifying installation.
[0005] The parallel disposition of the transfer lines and residual yarn removing devices,
of which number corresponds to that of the types of the fiber, requires a large space
and thus is disadvantageous in view of a factory layout. Also, this increases a cost
and complicates operations. Accordingly, it is an object of the invention to provide
a residual yarn removing apparatus for various types of roving bobbins, which does
not require a large space and can completely remove residual yarn.
SUMMARY OF THE INVENTION
[0006] The present invention provides a residual yarn removing apparatus for roving bobbins,
achieving the above-noted object, which is disposed in a transfer line for transferring
a spent roving bobbin from a fine spinning frame to a roving frame, the apparatus
including a plurality of residual yarn removing devices, which correspond in number
to the number of fiber types of the residual yarn of the roving bobbins and are disposed
in series to correspond to the respective fiber types; and a control unit for selectively
operating the residual yarn removing device corresponding to the detected fiber type
of the residual yarn of the roving bobbin. Also, the residual yarn removing device
includes a dust collecting box, a suction opening located at a lower portion of an
inner side of the residual yarn removing device, an exit opening located at an upper
portion of the inner side of the residual yarn removing device, a lower air passage
connecting the suction opening and an inlet side of the dust collecting box, an upper
air passage connecting an outlet side of the dust collecting box and the exit opening,
the above openings and passages forming a residual yarn collecting air passage, a
filter disposed in the dust collecting box for partitioning the same into the inlet
and outlet sides and capable of preventing passage of the removed residual yarn, and
a blower for supplying air flowing from the suction opening through the dust collecting
box toward the exit opening.
[0007] The residual yarn removing devices, which correspond to different fiber types, respectively,
are disposed in series, and the residual yarn removing devices corresponding to the
fiber types of the residual yarn of the bobbin, which are detected during transference,
are selectively driven for carrying out the removal of the residual yarn for the respective
fiber types.
[0008] The foregoing and other objects, features, aspects and advantages of the present
invention will become more apparent from the following detailed description of the
present invention when taken in conjunction with the accompanying drawings.
BRIEF DESCRIPTION OF THE DRAWINGS
[0009]
Figure 1 is a plan of a bobbin process station in which a residual yarn removing apparatus
for roving bobbins of the invention is disposed;
Figure 2 is a cross section illustrating another embodiment of the invention;
Figure 3 is a cross section of the prior art; and
Figure 4 is a cross section taken along line IV-IV in Figure 3.
DETAILED DESCRIPTION OF THE EMBODIMENTS
[0010] A residual yarn removing apparatus for various types of roving bobbins according
to the invention will be described below in detail with reference to embodiments shown
in the figures. Figure 1 is plan illustrating a residual yarn removing apparatus 1
for various types of roving bobbins as well as a roving frame group 2 and a fine spinning
frame group 3 to and from which roving bobbins 5 are transferred. The roving frame
group 2 is formed of roving frames 2a, 2b, 2c,··· , which use full roving bobbins
5A, 5B, 5C,··· formed of different fiber types of roving 4A, 4B, 4C,··· wound around
the bobbins, respectively. The roving bobbins 5A, 5B, 5C,··· are moved to transfer
passages 6a, 6b, 6c,···, which include rails for transferring the roving bobbins and
are juxtaposed to the roving frames 2a, 2b, 2c,···, respectively. Thereby, the roving
bobbins 5A, 5B, 5C,··· are transferred to the fine spinning frame group 3. The transfer
passages 6a, 6b, 6c,··· are joined to one transfer passage 7a, which is connected
through a selector 10a to two transfer passages 8 and 9 disposed in parallel. The
transfer passages 8 and 9 are joined by a selector 10A to one transfer passage 7A.
When full roving bobbins 5S including the roving bobbins 5A, 5B, 5C,··· are transferred
from the roving frame group 2 to the fine spinning frame group 3, the selectors 10a
and 10A are controlled to transfer them through the transfer passage 8 as indicated
by an arrow S, and are not transferred through the transfer passage 9. The transfer
passage 7A are divided at the vicinity of the fine spinning frame group 3 to form
transfer passages 6A, 6B, 6C,···, which extend to the fine spinning frames 3A, 3B,
3C,··· forming the fine spinning frame group 3, respectively. A transfer line is formed
of the transfer passages 6a, 6b, 6c,···, transfer passage 7a, transfer passages 8
and 9, transfer passage 7A and transfer passages 6A, 6B, 6C,···.
[0011] A detecting unit 30 for various fiber types is disposed in the transfer line 7A.
The detecting unit 30 detects the type or kind of the roving bobbin (5A, 5B, 5C or
others) transferred from the roving frame group 2 to the fine spinning frame group
3, so that a control unit (not shown) operates to select one passage among the transfer
passages 6A, 6B, 6C,··· corresponding to the detected bobbin. The roving bobbins 5A,
5B, 5C,··· are moved to the fine spinning frames 3A, 3B, 3C,···, respectively for
the fine spinning.
[0012] The detecting unit 30 is designed to optically read labels or the like, which indicate
the fiber type and are attached directly to the roving bobbins 5 or, e.g., to bobbin
hangers (not shown) carrying the roving bobbins 5 during transference. The detecting
unit 30 may be formed of a magnetic device such as a magnetic sensor or other appropriate
device.
[0013] The roving bobbins 5a, 5b, 5c,··· which have been processed and spent in the fine
spinning frame group 3 are moved to the transfer passages 6A, 6B, 6C,··· and are returned
to the roving frame group 2. When the bobbins are transferred from the fine spinning
frame group 3 to the roving frame group 2, they pass not through the transfer passage
8 but through the transfer passage 9 as indicated by an arrow R. Except for this,
the passages are opposite to those for the transfer from the roving frame group 2
to the fine spinning frame group 3. After the movement from the transfer passages
6a, 6b, 6c,··· to the roving frames 2a, 2b, 2c,···, the full roving bobbins 5A, 5B,
5C,··· are formed by winding the roving of the fiber types 4a, 4b, 4c,··· around the
respective bobbins, and the foregoing steps are repeated.
[0014] Residual yarn removing devices 1a, 1b, 1c,··· for the roving bobbins are disposed
in series in the passage 9 through which the spent roving bobbins 5R including the
roving bobbins 5a, 5b, 5c,··· are returned from the fine spinning frame group 3 to
the roving frame group 2. The residual yarn removing devices 1a, 1b, 1c,··· are internally
provided with ducts 15 for discharging the residual yarn which are connected through
pipings to corresponding residual yarn storages (not shown) dedicated to the various
fiber types 4a, 4b, 4c,···, respectively, so that the residual yarn removing devices
1a, 1b, 1c,··· may send the various fiber types 4a, 4b, 4c,··· of residual yarn to
the dedicated residual yarn storages, respectively. Thus, the residual yarn removing
devices 1a, 1b, 1c,··· are dedicated to the corresponding fiber types 4a, 4b, 4c,···,
respectively.
[0015] The detecting unit 30, which is disposed in the transfer passage 7A located upstream
the transfer passage 9, detects the fiber types of the residual yarn of the roving
bobbins 5a, 5b, 5c,··· before they enter the residual yarn removing devices 1a, 1b,
1c,···.
[0016] The residual yarn detecting device, which corresponds to the fiber type of the residual
yarn of the roving bobbin detected by the detecting unit 30, is operated. For this
purpose, there is disposed the control unit (not shown). The control unit may be formed
of an appropriate unit or device which selectively operates the residual yarn removing
devices corresponding to the various fiber types. Each of the residual yarn removing
devices 1a, 1b, 1c,··· draws and removes only the residual yarn of the corresponding
fiber type. The residual yarn removing devices 1a, 1b, 1c,··· draw and remove the
residual yarn in a manner similar to that disclosed in the Japanese Laid-Open Utility
Model Publication No. 3-92782 (1991).
[0017] Therefore, the roving of the respective fiber types of all the roving bobbins can
be independently processed during the transference. The removed residual yarn is opened
during the drawing and is surely separated in accordance with the fiber types, so
that it can be used as the raw cotton, and is supplied to the roving frame group 2
again.
[0018] Figures 2 is a cross section illustrating another embodiment of the invention, which
includes a dust collecting box and others in addition to the components of the residual
yarn removing device 100 in the prior art shown in Figures 3 and 4. A dust collecting
hopper 51 having an open upper end is formed at an inner lower portion of a residual
yarn removing device 50. The hopper 51 is provided at its substantially central portion
with a suction opening 52 and is also provided at its upper portion with an exit opening
53 which has a grille and can be connected to the exterior. The dust collecting box
54 is disposed outside and under the residual yarn removing device 50, and has an
inlet side 56A connected to the suction opening 52 through a lower air passage 55A
and an outlet side 56B connected to the exit opening 53 through an upper air passage
55B. A residual yarn collecting air passage 60 is formed of air passages including
the suction opening 52, lower air passage 55A, dust collecting box 54 , upper air
passage 55B and exit opening 53.
[0019] A filter 57 is disposed in the dust collecting box 54, partitioning the interior
into the inlet side 56A and the outlet side 56B. A residual yarn collecting portion
54A between the filter 57 and the inlet side 56A in the dust collecting box 54 serves
to accumulate the residual yarn 11, and the filter 57 is shifted toward the outlet
side 56B for increasing the capacity of the portion 54A. In the upper air passage
55B, there is provided a blower 58 driven by an electric motor 59 for supplying the
air from the lower air passage 55A toward the upper air passage 55B. The blower 58
may be disposed in any position in the residual yarn collecting air passage 60, and
thus may be disposed in the lower air passage 55A or the dust collecting box 54. When
the residual yarn 11 is removed in the residual yarn removing device 50 and is drawn
through the suction nozzle 13, a slight amount of residual yarn may not be sufficiently
drawn and thus may remain in the residual yarn removing device 50. If the slight amount
of residual yarn thus remaining were mixed with the residual yarn of the other fiber
type, the quality of product would be significantly impaired. Therefore, the remaining
residual yarn must be completely removed, even if its quantity is very small.
[0020] When the blower 58 operates, the air in the residual yarn removing device 50 is drawn
through the suction opening 52, the lower air passage 55A and the inlet side 56A into
the dust collecting box 54, and then passes through the filter 57 and the outlet side
56B into the upper air passage 55B. Thus, the air passes through the residual yarn
collecting air passage 60 and the exit opening 53 into the residual yarn removing
device 50. The slight amount of residual yarn 11 remaining in the residual yarn removing
device 50 is drawn by the air through the suction opening 52 into the dust collecting
box 54. However, the residual yarn 11 cannot pass through the filter 57, so that it
is accumulated in the residual yarn collecting portion 54A located upstream the filter
57 in the dust collecting box 54. Even if the slight amount of residual yarn remains
in the residual yarn removing device 50, the interior of the residual yarn removing
device 50 can be completely cleaned up by operating the blower 58 for drawing and
accumulating the residual yarn at the residual yarn collecting portion 54A in the
dust collecting box 54.
[0021] According to the invention, as described hereinbefore, the detecting unit detects
the fiber types of the roving of the roving bobbin, and the residual yarn removing
devices disposed in series in the transfer line are selectively operated correspondingly
to the fiber types, so that the residual yarn of all the roving robins which are being
transferred can be completely removed by the operations carried out for the respective
fiber types. Since the residual yarn removing devices are disposed in series, the
space can be reduced.
[0022] Since the dust collecting air passage having the filter and associated to the blower
is arranged in the dust collecting box, the slight amount of residual yarn which may
remain in the residual yarn removing device can be removed by the filter.